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基于第一性原理对纳米晶MgSb中晶格热输运的新见解:高阶声子散射的关键作用

Novel insights into lattice thermal transport in nanocrystalline MgSb from first principles: the crucial role of higher-order phonon scattering.

作者信息

Chang Zheng, Zheng Jiongzhi, Jing Yuhang, Li Weiqi, Yuan Kunpeng, Ma Jing, Gao Yufei, Zhang Xiaoliang, Hu Ming, Yang Jianqun, Tang Dawei

机构信息

Key Laboratory of Ocean Energy Utilization and Energy Conservation of Ministry of Education, School of Energy and Power Engineering, Dalian University of Technology, Dalian 116024, China.

Department of Mechanical and Aerospace Engineering, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong 999077, China.

出版信息

Phys Chem Chem Phys. 2022 Sep 14;24(35):20891-20900. doi: 10.1039/d2cp01967a.

Abstract

Zintl phase MgSb, which has ultra-low thermal conductivity, is a promising anisotropic thermoelectric material. It is worth noting that the prediction and experiment value of lattice thermal conductivity () maintain a remarkable difference, troubling the development and application. Thus, we firstly included the four-phonon scattering processes effect and performed the Peierls-Boltzmann transport equation (PBTE) combined with the first-principles lattice dynamics to study the lattice thermal transport in MgSb. The results showed that our theoretically predicted is consistent with the experimentally measured, breaking through the limitations of the traditional calculation methods. The prominent four-phonon scatterings decreased phonon lifetime, leading to the of MgSb at 300 K from 2.45 (2.58) W m K to 1.94 (2.19) W m K along the in (cross)-plane directions, respectively, and calculation accuracy increased by 20%. This study successfully explains the lattice thermal transport behind mechanism in MgSb and implies guidance to advance the prediction accuracy of thermoelectric materials.

摘要

津特耳相MgSb具有超低的热导率,是一种很有前景的各向异性热电材料。值得注意的是,晶格热导率()的预测值与实验值之间仍存在显著差异,这给其发展与应用带来了困扰。因此,我们首先考虑了四声子散射过程的影响,并结合第一性原理晶格动力学求解玻尔兹曼输运方程(PBTE),以研究MgSb中的晶格热输运。结果表明,我们的理论预测值与实验测量值相符,突破了传统计算方法的局限性。显著的四声子散射降低了声子寿命,使得MgSb在300 K时沿面内(面外)方向的晶格热导率分别从2.45(2.58)W m K降至1.94(2.19)W m K,计算精度提高了20%。本研究成功解释了MgSb背后的晶格热输运机制,并为提高热电材料的预测精度提供了指导。

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